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WIND-projekt.de Brussels, 3rd Apr.2014 Brussels, 2014-04-03 Demonstration and Innovation Project RH 2 -WKA Connecting wind and hydrogen to make wind energy a steady power source

Demonstration and Innovation Project RH WIND … Wind Hydrogen Project RH2...WIND-projekt.de Brussels, 3rd Apr.2014 WIND-projekt We take care of tomorrow´s energy! Brussels ... A

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Page 1: Demonstration and Innovation Project RH WIND … Wind Hydrogen Project RH2...WIND-projekt.de Brussels, 3rd Apr.2014 WIND-projekt We take care of tomorrow´s energy! Brussels ... A

WIND-projekt.de Brussels, 3rd Apr.2014

WIND-projekt We take care of tomorrow´s energy!

Brussels, 2014-04-03

Demonstration and Innovation Project RH2-WKA Connecting wind and hydrogen to make wind energy a steady power source

Page 2: Demonstration and Innovation Project RH WIND … Wind Hydrogen Project RH2...WIND-projekt.de Brussels, 3rd Apr.2014 WIND-projekt We take care of tomorrow´s energy! Brussels ... A

WIND-projekt.de Brussels, 3rd Apr.2014

CEO Dipl.-Ing.

Carlo Schmidt

Company vision:

„affordable energy“ based on renewable energies

Key figures for project planning:

Onshore: approx. 200 WTG (ca 375 MW)

Offshore: approx. 230 WTG (ca 1,050 MW) (Breitling + Baltic I in operation)

• founded in 1994 by the owner and CEO Mr. Carlo Schmidt

• independent project planning company (onshore+offshore wind)

• located in Börgerende (Federal State of Mecklenburg-Western Pomerania)

• Portfolio: planning, realization and operation of on- and offshore-wind turbines (WTG) and additive energy systems (e.g. energy storage)

WIND-projekt in brief

Berlin

Hamburg

Munich

Mecklenburg- Western-Pomerania

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WIND-projekt.de Brussels, 3rd Apr.2014

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Offshore WEA Breitling

location: port of Rostock distance to shore: ca. 0.3 km water depth: ca. 2.5 m power: 2.5 MW electrical energy for approx. 2,000 households Jan. 2006: WTG in operation

Planning activities in the german baltic sea

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WIND-projekt.de Brussels, 3rd Apr.2014

Planning activities in the german baltic sea

Offshore Wind farm Baltic I

location: within the 12-nautical mile zone distance to shore: approx. 16 km 21 WTG with 2.3 MW each total power: 48.3 MW status: in operation

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The planning and permission procedures of the offshore-projects were conducted by WIND-projekt.

The realization & operation is conducted by ENBW.

Offshore Wind farm Kriegers Flak („Baltic II“) location: within the German exclusive economic zone distance to shore: approx. 32-35 km 80 WTG with 3.6 MW each total power : 288 MW status: under construction since spring 2013

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WIND-projekt.de Brussels, 3rd Apr.2014

Prototype sites and settlement consulting for manufacturers

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WIND-projekt.de Brussels, 3rd Apr.2014

Demonstration and Innovation Project

RH2®-Werder/Kessin/Altentreptow (RH2-WKA)

RH2-renewable hydrogen www.rh2-wka.de

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WIND-projekt.de Brussels, 3rd Apr.2014

Dimension: 28 WTG (up to 7.5 MW/WTG)

Total farm capacity: approx. 140 MW

Hydrogen system: 1,000 kW electrolyses (1. step);

pressure storage, 650 kW H2-CHP-unit

Grid connection: 380 kV and 110 kV grid access

(SDL-compatible)

Job effects: > 50 in region

Settling: manufacturing/service base at project site

Infrastructure: direct connection to the motorway A20

Output: electrical energy for about

125,000 households (15% of M-V)

CO2-savings: ca. 250,000 t CO2/a

Subsidies: government funding of

about 4.5M EUR for R&D

Status: in operation

Key figures of the demonstration and innovation project RH2-WKA

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WIND-projekt.de Brussels, 3rd Apr.2014

project approach:

• power demand of turbines

• network integration

• losses caused by grid management

• timeline for grid expansion

• new business cases

Key figures of the demonstration and innovation project RH2-WKA

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realisation of the energy storage system

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f. left: C. Schmidt (WIND-projekt), E. Sellering (Prime Minister M-V), Dr. O. Ehret (NOW GmbH)

ground-breaking ceremony in 2011

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WIND-projekt.de Brussels, 3rd Apr.2014

realisation of the energy storage system

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Principle of the RH2- wind-hydrogen-system

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storage

gas storage

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Principle of the RH2- wind-hydrogen-system

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Key data of the RH2- wind-hydrogen-system

electrolysis: 210 Nm³/h (alkaline electrolysis)

efficiency: 51.3 %

reconversion: 250 kWel;

efficiency: 33.2 % (MPP)

overall el. efficiency: 15.4 % (approx.)

test period: since 1.Q/2013 (complete circle)

storage input: 357,000 kWh (via al. elec., only for test purposes, 2013)

storage output: 48,000 kWh (via ICE, only for test purposes, 2013)

permission process: according to Federal Emission Protection Law (2010 + 2 years)

construction period: about 12 month

subsidies:

partners:

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Main objectives/conclusions

Phase I: component test (completed)

Phase II: production according to the hydrogen gas demand (completed)

Phase III: production according to the heat demand (in simulation)

Phase IV: production in line with the power demand of the windfarm (completed)

Phase V: production in line with phase IV + external parameters (completed)

(e.g. wind forecast, grid management acc. to Renewable Energy Act)

Phase VI: power-to-gas, injection of hydrogen into cng grid (permission process)

Phase VII: plant extension for the supply of balancing energy (planning process)

conclusions

• each application causes special needs in dimension, control system, technology

• still high demand of on-going development for the components

• need for public financial support for realization still significant

• demand of specific legal conditions for storing and green balance power plants

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WIND-projekt GmbH, Seestraße 71a, 18211 Börgerende, [email protected]

www.RH2-WKA.de

Thank you for your attention!

Marcus Heinicke Head of planning +49 (0)38203-9126-17 [email protected]

Robert Vogt Financing/Controlling +49 (0)38203-9126-18 [email protected]

M-V